WO2005109767A1 - Ip addressing to support ipv4 and ipv6 - Google Patents

Ip addressing to support ipv4 and ipv6 Download PDF

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Publication number
WO2005109767A1
WO2005109767A1 PCT/KR2005/001339 KR2005001339W WO2005109767A1 WO 2005109767 A1 WO2005109767 A1 WO 2005109767A1 KR 2005001339 W KR2005001339 W KR 2005001339W WO 2005109767 A1 WO2005109767 A1 WO 2005109767A1
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WIPO (PCT)
Prior art keywords
message
base station
connection identifier
mobile
network
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PCT/KR2005/001339
Other languages
French (fr)
Inventor
Yong-Ho Kim
Gi-Seon Ryu
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Lg Electronics Inc.
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Publication date
Application filed by Lg Electronics Inc. filed Critical Lg Electronics Inc.
Priority to EP05740865A priority Critical patent/EP1745600A4/en
Priority to BRPI0510726-1A priority patent/BRPI0510726A/en
Priority to MXPA06012959A priority patent/MXPA06012959A/en
Priority to CA2565884A priority patent/CA2565884C/en
Priority to AU2005241846A priority patent/AU2005241846B2/en
Priority to CN200580020396.5A priority patent/CN1973489B/en
Priority to JP2007511296A priority patent/JP4364277B2/en
Publication of WO2005109767A1 publication Critical patent/WO2005109767A1/en
Priority to IL179083A priority patent/IL179083A/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2854Wide area networks, e.g. public data networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/08Access restriction or access information delivery, e.g. discovery data delivery
    • H04W48/12Access restriction or access information delivery, e.g. discovery data delivery using downlink control channel
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • H04W76/11Allocation or use of connection identifiers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W80/00Wireless network protocols or protocol adaptations to wireless operation
    • H04W80/04Network layer protocols, e.g. mobile IP [Internet Protocol]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W60/00Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration
    • H04W60/04Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration using triggered events
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/26Network addressing or numbering for mobility support
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W80/00Wireless network protocols or protocol adaptations to wireless operation
    • H04W80/04Network layer protocols, e.g. mobile IP [Internet Protocol]
    • H04W80/045Network layer protocols, e.g. mobile IP [Internet Protocol] involving different protocol versions, e.g. MIPv4 and MIPv6

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Computer Security & Cryptography (AREA)
  • Databases & Information Systems (AREA)
  • Mobile Radio Communication Systems (AREA)
  • Data Exchanges In Wide-Area Networks (AREA)
  • Small-Scale Networks (AREA)

Abstract

A broadcast dedicated connection identifier is used for broadcasting certain types of Internet Protocol (IP) control messages to allow proper IP address establishment for IPv4 and IPv6.

Description

Description IP ADDRESSING TO SUPPORT IPv4 AND IPv6 Technical Field
[1] The present invention relates to a method of transmitting an IP (Internet Protocol) address establishment control message applicable to a broadband wireless access system, and more particularly, to a method of transmitting a message in broadcast or multicast format for address establishment to support Mobile IPv4 and Mobile IPv6. Also, the present invention method supports a Mobile IPv4 and IPv6 mobile station that may use idle mode to minimize its power consumption. Background Art
[2] Considering the communication protocols related to wireless (radio) access systems, at the network layer, to allow proper data packet communication via the Internet, an Internet Protocol (IP) provides the necessary addressing and routing information for the packets. Here, each device (e.g., user terminal, mobile handset, wireless connectivity device, mobile subscriber station (MSS), etc.) connected via the Internet requires the establishment of a unique IP address in order for that device to be properly identified and distinguished from other devices.
[3] The Internet Protocols referred to as IP version 4 (IPv4) and IP version 6 (IPv6) have been developed. By employing 32-bit addresses, IPv4 has been found to have limitations because of the increasing popularity of Internet communications, whereby each device connected with the Internet needs its own unique IP address. As such, because the availability of 32-bit addresses would soon be exhausted, an enhancement was developed, namely, IPv6, which employs 128-bit addresses. Among such Internet Protocols, an example used in supporting the mobility aspects of user devices (e.g., user terminal, mobile handset, wireless connectivity device, mobile subscriber station (MSS), etc.) may be referred to as Mobility IPv4.
[4] Many wireless networks and devices still employ IPv4 addressing and do not support IPv6 addressing. As future networks and devices are being developed to support only IPv6, and until all networks and devices transition from IPv4 addressing to IPv6 addressing, an interim solution that allows networks and devices to concurrently support both IPv4 and IPv6 is desirable and necessary.
[5] A network that supports Mobile IPv4 comprises a home agent (HA), a foreign agent (FA) and a mobile station.
[6] The Mobile IPv4 operation is as follows. When a mobile node receives an agent advertisement message and determined whether it is located in its home network or in an external network (e.g., a foreign network). Also, a Care-of- Address (CoA) obtained from the foreign network is registered at the home agent (HA). [7] Table 1 shows an example of an agent advertisement message that is broadcast with respect to Mobile IPv4. When information related to the foreign agent or home agent (FA/HA) is broadcast from the mobile IP to the mobile station, the agent advertisement message shown in the following Table 1 may be used.
[8] [Table 1]
Figure imgf000004_0001
[9] In Mobile IPv4 Stateless Address Autoconfiguration, a method of address establishment based upon assistance from the base station is as follows.
[10] First, the host (mobile station) uses a FE80::/64, which is a link-local prefix, and a 48-bit interface identifier in order to induce a temporary link-local address. Also, for checking the uniqueness of the temporary link- local address, a neighbor solicitation message is broadcast to the network in order to perform duplicate address detection, and if the temporary link-local address is not a duplicate, then a router solicitation message is transmitted. Additionally, a router advertisement message is received to induce a global address.
[11] Table 2 shows an example of a neighbor solicitation message for IPv6. [12] [Table 2] Type Code Checksum Reserved Target Address Options.
[13] Table 3 shows an example of a neighbor advertisement message for IPv6. [14] [Table 3]
Figure imgf000005_0001
[15] Table 4 shows an example of a router solicitation message for IPv6. [16] [Table 4] Type Code Checksum Reserved Options...
[17] Table 5 shows an example of a router advertisement for IPv6. [18] [Table 5]
Figure imgf000005_0002
[19] Table 6 shows an example of a 16-bit connection identifier (CID) defined in a broadband wireless access system of the related art.
[20] [Table 6]
Figure imgf000006_0001
[21] The above connection identifier is a uni-directional medium access control (MAC) layer address that identifies the connection of the equivalent peer entities within the MAC layer of the base station and of the mobile station, and each connection comprises the following.
[22] A basic connection is established during ranging, and refers to the connection used for transmitting MAC management messages that are sensitive to delays. A primary connection refers to a connection established during ranging for transmitting MAC management messages that are not sensitive to delays. A secondary connection refers to a connection used for transmitting standard-based messages (e.g., DHCP, TFTP, etc.). Also, a transport connection is a connection used for transmitting user data.
[23] Figure 1 is an exemplary flow chart showing the procedures for initializing a mobile station in a broadband wireless access system. Referring to Figure 1, when the initial power of the mobile station is turned on, the downlink channels are searched and uplink (UL) and downlink (DL) synchronizations with the base station are obtained (Si l l). Also, ranging is performed with the base station to adjust the uplink transmit parameters (SI 12), a basic management connection identifier and a first management connection identifier are allocated and received from the base station in order to negotiate the basic functions with the base station (SI 13). After performing authentication for the mobile station (SI 14), the mobile station is registered with the base station (SI 15). The mobile station being managed with an Internet Protocol (IP), is allocated a secondary management connection indicator by the base station and establishes an IP connection through that second management connection identifier (SI 16). Also, the current date and time are set (SI 17). The content file of the mobile station is downloaded from the TFTP server through the second management connection identifier (SI 18), and a connection is established for the service that was prepared (SI 19).
[24] The IP connection establishment procedures using Mobile IPv4 or IPv6 according to the related art will now be explained.
[25] First, the connection establishment procedures using Mobile IPv4 are as follows. For the IP currently used in most Internet environments, it is assumed that an IP address can be used to uniquely identify the access point of a node (host or router). In this case, for any node to receive a datagram transmitted thereto, it must be located within a network that includes its IP address. Thus, a datagram cannot be transmitted to any node that is not located within a network that includes its IP address.
[26] In order to allow a node to change its access point while maintaining communication, one of the following two methods should be used. First, the node must change its IP address whenever its access point is changed, or second, the address of the host that moved must be transmitted to the entire Internet.
[27] Both of these methods have problems. Namely, in the first method, when the node location changes, maintaining the connection between the transport layer and the upper layers of the node are difficult. Also, in the second method, actual implementation will be difficult when assuming that the number of moving nodes will increase. Accordingly, a more extended technique is required to support the mobility of the nodes in the Internet, and one method of supporting such mobility is Mobile IP.
[28] Figure 2 depicts an example of a network that supports Mobile IP. As shown in Figure 2, a network that supports Mobile IP basically comprises a home agent (HA) (21), a foreign agent (FA) (22) and a mobile node (23).
[29] The HA and FA are nodes for transmitting a datagram to the mobile node (23). When the mobile node (23) is in communication with a correspondent node (24), upon moving from a home network to a foreign network, procedures to support his are needed. The Mobile IP operates through the following procedures.
[30] First, the mobile node (23) performs procedures to discover an agent. Namely, in order to inform of its existence, the mobile node has an agent or a mobility agent (which is a foreign agent) that employs a method of using an agent advertisement message, which corresponds to the Internet Control Message Protocol (ICMP) router discovery method used when an Internet host wishes to discover a router in the existing Internet procedures. Optionally, the mobile node (23) uses an agent obtaining message to obtain the agent advertisement message. The mobile node (23) receiving the agent advertisement message determines whether it is within its home network.
[31] Also, is the mobile node (23) determines that it is in a foreign network, the Care- of- Address (COA) of the mobile node is registered in the HA (21). Namely, through the agent discovery procedure above, if the mobile node determines that it is in a foreign network, the mobile node and the HA exchange registration request and response messages to register the COA of the mobile node (23).
[32] For the COA, two methods can be used. The first being a foreign agent COA that uses the FA (22) as the COA of the mobile node, and the second being a Co-located COA that allocates temporary IP addresses to the mobile node by a Dynamic Host Configuration Protocol (DHCP). These registered messages employ the User Datagram Protocol (UDP) port number 434 and includes the COA and lifetime of the mobile node.
[33] The related art operation method according to the IPv6 based Stateless Address Autoconfiguration will now be explained. The host (mobile station) uses a FE80::/64, which is a link-local prefix, and a 64-bit interface identifier in order to induce a temporary link-local address. Also, to check the uniqueness of the induced temporary link-local address, a neighbor solicitation message is broadcast to the network to perform duplicate address detection. As a result of the check, if there are duplicate addresses, a neighbor advertisement response message is transmitted from the duplicate host.
[34] As a result of the check, if there are no duplicate addresses, the host (mobile station) transmits a router solicitation message. Also, the received router advertisement message is used to induce a global address.
[35] Figure 3 shows a method for supporting an agent advertisement of Mobile IPv4 and a router advertisement of Mobile IPv6 in a broadband wireless access system.
[36] As shown in Figure 3, the base station (32) receives a Mobile IPv4 agent advertisement or a Mobile IPv6 router advertisement that is broadcast from the network (31), and the base station employs a secondary management connection for transmitting these to each mobile station in unicast. Here, the base station allocates a secondary management connection identifier during the procedure when the mobile station registers with the network.
[37] In the broadband wireless access system of the related art, the secondary management connection is used to individually transmit to all mobile stations (31) of the current base station (32), the Mobile IPv4 agent advertisement or the Mobile IPv6 router advertisement that are broadcast from the network. However, even though the agent advertisement and the router advertisement are messages that are commonly broadcast to all mobile stations, such are individually transmitted, which leads to the problem of wasting radio resources. [38] In a broadband wireless access system, an idle mode of the mobile station is supported in order to minimize power consumption. During idle mode, the mobile station does not need to perform handoff procedures when moving between base stations within the same paging zone. Thus, because the mobile station need not transmit uplink information for handoff procedures, the power consumption needed thereof can be saved.
[39] A general idle mode operation can be summarized as follows.
[40] A paging zone refers to an overall region that is handled by a plurality of base stations called a paging group, and the base stations included within the same paging zone have the same paging cycle and paging offset values.
[41] The mobile terminal can request the base station for change into idle mode, and the base station can change the corresponding mobile station into idle mode by delivering its paging zone ID, and the paging cycle and paging offset associated thereto.
[42] During idle mode, it is possible for the base station to determine whether to maintain or end its idle mode through the paging that is delivered in broadcast format from the base station at each paging cycle that was agreed upon. When a mobile station in idle mode has traffic that needs to be delivered, the mobile station may end idle mode at any time. When a mobile station in idle mode has traffic that needs to be delivered, the base station may make the mobile station end its idle mode through paging. If a mobile station in idle mode does not receive paging within the set time period due to reasons such as moving to a different paging zone, losing synchronization, etc., the mobile station ends its idle mode.
[43] In summary, as long as there is no data to be received or transmitted, a mobile station that entered idle mode can move freely within the same paging zone without performing handoff procedures by properly receiving periodic paging.
[44] The procedures for a fixed/mobile station changing into idle mode are as follows.
[45] 1) The fixed/mobile station delivers to the service base station an idle mode request message in order to change into idle mode.
[46] 2) The service base station delivers a paging group ID, paging cycle and paging offset values to the fixed/mobile station through an idle mode response message, and the connection information with the fixed/mobile station, the radio resources allocated to the mobile station, etc. are released.
[47] The following Table 7 shows an example of a message that the fixed/mobile station sends to the base station to request idle mode, by using an existing registration release request (DREG-REQ) message.
[48] [Table 7] DREG-REQ message
Figure imgf000010_0001
[49] If the De-registration_Request_Code of the DREG-REQ is set to 0x01 (request to initiate Idle Mode), the following data is included in the DREG-REQ message and delivered to the fixed/mobile station.
[50] [Table 8] TLV encoding of DREG-REQ message
Figure imgf000010_0002
[51] The following Table 9 shows an example of an idle more response message that the base station sends to the fixed/mobile station, by using an existing registration release command (DREG-CMD) message.
[52] [Table 9] DREG-CMD message
Figure imgf000011_0001
[53] The following Table 10 shows an example of the action code that may be used for the DREG-CMD message.
[54] [Table 10] DREG-CMD Action Code
Figure imgf000011_0002
[55] If the DREG_CMD Action Code is set to 0x005 (allow Idle Mode), the following information is included in the DREG-CMD message and delivered to the fixed/mobile station.
[56] [Table 11] DREG-CMD message TLV encoding
Figure imgf000012_0001
[57] 3) The base station informs that MAC address of the fixed/mobile station that changes into idle mode to all base stations in its paging group to allow paging of the fixed/mobile station by using the same paging cycle (PAGING_CYCLE, PAGING OFFSET).
[58] 4) The fixed/mobile station that has received permission to change into idle mode through the idle mode response message, determines through the paging message delivered in broadcast format from the base station according to the paging cycle, whether there is any downlink traffic to be delivered, whether ranging needs to be performed, or whether idle mode state is to be maintained.
[59] The following Table 12 shows an example of a paging announce message that the base station (that permitted the fixed/mobile station to transition into idle mode) delivers to the paging controller or to all base stations within the same paging zone. The base station that permitted idle mode can deliver this message to the paging controller, which forms the message into another format and can deliver it to all base stations within the same paging zone.
[60] [Table 12] Paging announce message
Figure imgf000013_0001
[61] The following Table 13 shows an example of a paging message received by the fixed/mobile station at certain periods from the base stations of a paging group. [62] BS Broadcast Paging (MOB_PAG-ADV) message format
[63] [Table 13] Broadcast format paging message
Figure imgf000014_0001
[64] 5) When the fixed/mobile station receives from the paging message that there is downlink traffic, the idle mode state is ended and the downlink data traffic is received upon re-registration with the network.
[65] 6) When the idle mode state is ended and upon re-registration with the network, ranging is used to re-register with the network.
[66] The following Table 14 shows a ranging response message that is transmitted in response to the ranging request message, and Table 15 shows the information that is added to the ranging response when location update is performed or upon re- registration with the network after idle mode is ended. Through this, the base station informs of the valid data maintained at the network, such that the steps that may be omitted when the mobile/fixed station re -registers with the network can be known.
[67] [Table 14] RNG-RSP message
Figure imgf000015_0001
[68] [Table 15] Ranging response (RNG-RSP) TLV message
Figure imgf000015_0002
[69] 7) Other than the method above, the fixed/mobile station performs location update through ranging at the point of time corresponding to the update conditions for location update, and the messages in the above Tables 7 and 8 are used. The location update conditions include when the paging zone is changed, when the timer has expired, etc.
[70] 8) If the paging message instructs the fixed/mobile station no to take any action, the idle mode state is maintained without any particular action being taken.
[71] 9) If the fixed/mobile station has uplink traffic or downlink traffic, or if the idle mode is ended because the paging group has been passed to another base station, the base station informs this to the other base stations within the same paging group, to allow the corresponding fixed/mobile station to be deleted from the list of idle mode fixed/mobile stations.
[72] Except for the above situations where the idle mode mobile station performs location update or when downlink traffic or uplink traffic is generated, the mobile station only performs the procedures to receive paging messages periodically transmitted from the base station, such that free movement within the same paging zone is guaranteed without performing handover procedures, to thus minimize power consumption of the mobile station.
[73] In the related art when changing into idle mode, the mobile station can request in the idle mode request message the management resource information that the base station wishes to maintain, and the base station, through the idle mode response message, can inform the management resource information to be maintained after the mobile station changed into idle mode. Here, through the exchange of idle mode request and response messages, the IP address information of the mobile station can be maintained by the base station after the mobile station changes into idle mode.
[74] By periodically receiving an agent advertisement message and a router advertisement message that are transmitted from the network, the mobile station using Mobile IPv4 and IPv6 must update the validity of the IP that it maintains, but a mobile station in idle mode only performs operations for receiving paging messages and thus cannot receive control messages that are broadcast periodically by the network. An idle mode mobile station that did not receive an agent advertisement message and a router advertisement message, can delivers agent solicitation and router solicitation messages to request transmission of agent advertisement and router advertisement messages, but to do so, the idle mode must be ended. As such, even if the mobile station changed into idle mode to save power, its idle mode is ended every time it cannot receive a control message that is periodically transmitted from the network, and thus the problem of not achieving the effect of minimizing power consumption for changing into idle mode occurs.
[75] Accordingly, the present invention provides a method to allow\ reception of agent advertisement messages and router advertisement messages that are broadcast from the network, even when the Mobile IPv4 and IPv6 mobile station changes into idle mode, to allow updating of the validity of the IP maintained by the mobile station while minimizing power consumption. Disclosure of Invention Technical Solution
[76] The present invention has been proposed to solve the problems of the related art by providing a message transmission method that allows the messages related to IP address establishment that are broadcast from the network to be transmitted in broadcast or multicast format over the radio interface of a broadband wireless access system and to allow reception at the mobile station, regardless of its operation mode (normal operation mode or idle mode). [77] The present invention provides a broadcast dedicated connection identifier that is used for broadcasting IP control messages to allow proper IP address establishment for IPv4 and IPv6. Description of Drawings [78] Figure 1 depicts an exemplary flow chart of the initialization procedures of a mobile station in a broadband wireless access system. [79] Figure 2 depicts an example of a network that supports Mobile IP.
[80] Figure 3 depicts a method of how an agent advertisement of a Mobile IPv4 and a router advertisement of a Mobile IPv6 are transmitted. [81] Figure 4 depicts a method of how the IP related messages sent from the network are transmitted by the base station to the mobile stations according to a first embodiment of the present invention. [82] Figure 5 depicts a method of how the IP related messages sent from the network are transmitted by the base station to the mobile stations according to a second embodiment of the present invention. [83] Figure 6 depicts a method of how the IP related messages sent from the network are transmitted by the base station to the mobile stations according to a third embodiment of the present invention. [84] Figure 7 depicts a method of how the IP related messages sent from the network are transmitted by the base station to the mobile stations according to a fourth embodiment of the present invention. [85] Figure 8 depicts a first embodiment flow diagram of a method of transmitting an agent advertisement message from the base station to idle mode mobile stations according to the present invention. [86] Figure 9 depicts a second embodiment flow diagram of a method of transmitting a router advertisement message from the base station to idle mode mobile stations according to the present invention. Mode for Invention [87] The preferred exemplary embodiments of the present invention will now be explained. However, those skilled in the art would understand that the features of the present invention should not be limited to only the embodiments described herein.
[88] The related art does not clearly provide a definition of how IP control messages are to be delivered, and the secondary CID of the related art is unicast, namely, message are sent to each mobile station individually. As such, problems arise because in IPv4 and IPv6, certain types of information (e.g., agent advertisement messages, router advertisement messages, neighbor solicitation messages, etc.) need to be broadcast from the network to base stations and to mobile stations. To address the related art problems, the present invention provides a broadcast dedicated connection identifier that is used for broadcasting IP control messages to allow proper IP address establishment for IPv4 and IPv6.
[89] According to the present invention, in a broadband wireless access system that includes a network, a base station, and at least one mobile station, a method for the base station to transmit a message for Mobile IPv4 address establishment, comprising: receiving an agent advertisement message form the network; and transmitting the agent advertising message to all Mobile IPv4 mobile stations that are part of the base station by using a particular connection identifier.
[90] in a broadband wireless access system that includes a network, a base station, and at least one mobile station, a method for the base station to transmit a message for IPv6 address establishment, comprising: receiving a router advertisement message form the network; and transmitting the router advertising message to all IPv6 mobile stations that are part of the base station by using a particular connection identifier.
[91] In a broadband wireless access system that includes a network, a base station, and at least one mobile station, a method for the base station to transmit a message for IPv6 address establishment, comprising: receiving a uniqueness checking message (neighbor solicitation) to determine a uniqueness of a temporary address established for a mobile station from the base station; and transmitting the uniqueness checking message to all mobile stations that are part of the base station by using a particular connection identifier (CID).
[92] In a broadband wireless access system that includes a network, a base station, and at least one mobile station, a method by a Mobile IPv4 and IPv6 mobile station of receiving a message for IP address establishment transmitted from the base station, comprising: changing into idle mode, and receiving a IP address establishment message delivered from the network through a particular connection identifier.
[93] The above purpose, features and advantages of the present invention will become more apparent through the attached drawings and detailed description. The attached drawings will be referred to for explaining the preferred embodiments of the present invention.
[94] The present invention provides the structure and establishing method of a connection identifier used for establishing and maintaining IP addresses, and for allowing a base station (which is an example of a point of attachment (PoA)with a network) to transmit in broadcast or multicast format, messages that are broadcast from the network (e.g., Mobile IPv4 agent advertisement messages and Mobile IPv6 router advertisement messages), to mobile stations that are managed through an IP connection in a broadband wireless access system. However, among the messages related to IP address establishment and maintaining, if unicast transmission between the base station (or point of attachment) and mobile station is required, the message is transmitted in a point-to-point manner by using a secondary management CID or a transport CID.
[95] A first embodiment of the connection identifier according to the present invention is as follows.
[96] For transmitting a message that was broadcast from the network, all base stations (i.e., all points of attachment) of a broadband wireless access system employ a particular connection identifier. Namely, as with MAC related messages of broadcast format being transmitted through a connection identifier of OxFFFF, when the base station (point of attachment) transmits to a mobile station a message that was broadcast from the network, such transmission is performed by using a particular connection identifier that was previously agreed upon between the mobile station and the base station (point of attachment).
[97] Table 16 shows an example of a 16 bit connection identifier defined in a broadband wireless access system according to the present invention.
[98] [Table 16]
Figure imgf000020_0001
[99] As in the above embodiment, through use of a single particular connection identifier, a method of receiving management messages broadcast from the network is possible for Mobile IPv4 and IPv6, and a method of receiving management messages broadcast from the network using respectively different connection identifier is also possible. The following shows an example of a 16 bit connection identifier that allows the base station (or other type of point of attachment) to deliver messages that were broadcast from the network in Mobile IPv4 and IPv6 through use of respectively different connection identifiers.
[100] [Table 17]
Figure imgf000021_0001
[101] Next, a second embodiment of the connection identifier according to the present invention is as follows.
[102] During the process of the mobile station performing procedures for registering with the network, the base station (or other type of point of attachment) allocates to the mobile station, a connection identifier according to a network provider for transmitting a message that is broadcast form the network. (For example, a connection identifier of OxFEFO for a message broadcast from network provider A, while a connection identifier of OxFEFl for a message broadcast from network provider B, may be used by the base station to deliver to the mobile stations). When the mobile station first registers with the network, or while performing handover to a different base station (point of attachment), the value of the connection identifier (that is allocated per network provider) may be included in the registration response (REG-RSP) message delivered by the base station to the mobile station in order to inform the mobile station.
[103] Table 18 shows an example of a 16 bit connection identifier defined in a broadband wireless access system according to the present invention.
[104] [Table 18]
Figure imgf000022_0001
[105] There are two types of methods for allocating the network management connection identifier according to network providers as follows.
[106] First, during network registration and handover, the mobile station delivers to the base station, an identifier of the network provider that it is part of through a registration request (REG-REQ) message or a mobile station basic capability request (SBC-REQ) message, the base station delivers to the mobile station through a network management connection identifier registration response (REG-RSP) message allocated to the corresponding network provider, and the mobile station can receive the management message broadcast from the network through the network management connection identifier received from the base station.
[107] The following Table 19 shows an example of a TLV format of a network provider identifier that can be included in the registration request (REG-REQ) message or the mobile station basic capability request (SBC-REQ) message, while Table 20 shows an example of a TLV format of a network management connection identifier that can be included in the registration response (REG-RSP) message.
[108] [Table 19] TLV encoding of network provider identifier
Figure imgf000023_0001
[109] [Table 20] TLV encoding of network management connection identifier
Figure imgf000023_0002
[110] Second, when the mobile station performs network registration or during handover, the base station includes mapping information of the network provider identifier and the network management connection identifier into the registration response (REG-RSP) message and delivers such to the mobile station, which can then receive the management message that is broadcast from the network, through the network management connection identifier that is allocated to the network provider that the mobile station is part of. The following Table 21 shows an example of this in TLV (Type, Length, Value) format, Table 21-2 shows how the 16 bit connection identifier allocated with respect to the network provider identifier can be directly informed, and Table 21-2 shows how the connection identifier allocated with respect to the network provider identifier can be informed to the mobile station through an index.
[111] [Table 21]
Figure imgf000023_0003
[112] [Table 21-1]
Figure imgf000023_0004
[113] [Table 21-2]
Figure imgf000023_0005
[114] Hereafter, the procedures for transmitting from the base station (point of attachment) to a mobile station in broadcast or multicast format, the IP related messages transmitted from the network, by using the above-identified broadcast or multicast format network management connection identifier.
[115] Figure 4 shows a flow chart of a first embodiment for a method of transmitting by the base station to the mobile stations, IP related messages that were transmitted from the network. This embodiment can employ a connection identifier (CID) having the structure of the first embodiment connection identifier. The base station using this connection identifier, transmits in broadcast or multicast format to the mobile station, the Mobile IPv4 related messages received from the network.
[116] Referring to Figure 4, the first embodiment of the present invention can be explained as follows. Upon power on, the mobile station searches the downlink channels, and obtains uplink/downlink synchronization with the base station (S411). Also, by performing ranging with the base station, the uplink transmission parameters are adjusted, and a basic management connection identifier and a primary management CID are allocated by and received from the base station (S412). The mobile station performs negotiation of the basic functions with the base station (S413), and performs authentication (S414). When the mobile station is registered with the base station, the mobile station being managed by IP, is allocated a secondary management CID from the base station (S415).
[117] The mobile station uses the secondary management connection or transmission connection to transmit an agent solicitation message to the mobile agent (FA or HA) (S416). The base station transmits to the mobility agent, the agent solicitation message received from the mobile station through the secondary connection or transmission connection. The foreign agent (FA) or the home agent (HA) that receives the agent solicitation message from the mobile station transmits an agent advertising message to the base station (S418), and the base station transmits to the corresponding mobile station through the secondary management or transmission connection (S419).
[118] If the mobile station is part of a foreign agent, in order to register the address of the foreign agent (obtained from the agent advertisement message) with the home agent, a registration request message is transmitted to the base station through the secondary management connection or transmission connection (S420), and the base station transmits a registration request message to the home agent (S421). The home agent receiving the registration request, registers the location of the mobile station (binding the address of the foreign agent of the mobile station with the home address), and transmits a registration response message to the base station (S422). Through the secondary management connection or transmission connection, the base station transmits the registration response message received from the home agent to the mobile station (S423).
[119] After completing the IP connection establishment procedures, the mobile station sets the current date and time (S424). The content file of the mobile station is downloa ded from the TFTP server through the secondary management connection (S425), and the connection for the previously prepared service is established (S426). The mobile station that completed its network registration procedures changes into normal operation state.
[120] The base station periodically receives the agent advertisement message from the FA (S427), and transmits these to the Mobile IPv4 mobile stations within the base station (S428). Here, the transmission can be performed through a broadcast or multicast format network management connection identifier according to that proposed in the connection identifier first embodiment. Namely, the base station can use a fixed value (e.g., OxFEFE) that was pre-defined between the mobile station and the base station as the connection identifier used for transmitting the agent advertisement message. Here, all mobile stations using the Mobile IPv4 receive the agent advertisement message transmitted through the corresponding connection identifier. The mobile station receiving the agent advertisement message determines whether the FA address it is maintaining is valid, and updates the Mobile IPv4 address validity.
[121] When the mobile station performs handover with a different foreign agent network, the mobile station performs steps (S416) through (S423) of the registration procedures for the handover target base station in order to establish an IP connection. If the mobile station performs handover within the same foreign network, the IP connection establishing procedures for the handover target base station may be omitted. Also, regardless of entry into another foreign agent network, after handover, the mobile station periodically receives agent advertisement messages from the base station through the same network management connection identifier as before.
[122] Figure 5 shows a flow chart of a second embodiment for a method of transmitting by the base station to the mobile stations, IP related messages that were transmitted from the network. In this embodiment, the connection identifier having a format provided in the second embodiment can be used. The base station uses the above connection identifier to transmit the Mobile IPv4 and related network messages to the mobile station in broadcast or multicast format.
[123] Referring to Figure 5, the second embodiment of the present invention will be explained. Upon power on, the mobile station searches the downlink channels and obtains uplink/downlink synchronization with the base station (S511). Also, ranging with the base station is performed to adjust uplink transmission parameters, and a basic management connection identifier and a primary management connection identifier are allocated from the base station (S512). The mobile station performs negotiation of basic functions with the base station (S513) and authentication for the mobile station is performed (S514). When the mobile station is registered with the base station, the mobile station being managed by IP receives a second management connection identifier and a network management connection identifier for the network provider identifier allocated from the base station (S515).
[124] However, if the mobile station delivers the network provider identifier to the base station by including it in the registration request (REG-REQ) message or in the mobile station basic capability request (SBC-REQ) message, the base station includes the network management connection identifier that was allocated to the corresponding network provider identifier into the registration response (REG-RSP) message as shown in Table 20, and allocates it to the mobile station. If the mobile station does not deliver the network provider identifier to the base station by including it in the registration request (REG-REQ) message or in the mobile station basic capability request (SBC-REQ) message, the base station delivers to the mobile station, the mapping information of the network provider identifier and the network management connection identifier as shown in Table 21, and the mobile station receives the management message broadcast form the network through the network management connection identifier with respect to the identifier of the network provider that it is part of.
[125] The mobile station uses the second management connection or transmission connection to transmit an agent solicitation message to the mobility agent (FA or HA) (S516). The base station transmits the agent solicitation message received from the mobile station to the FA through the second management connection or transmission connection. The FA that received the agent solicitation message from the mobile station, transmits an agent advertisement message to the base station (S518), and the base station transmits to the corresponding mobile station through the second management connection identifier or transmission connection identifier (S519).
[126] In order to register the address of the foreign agent (obtained through the agent advertisement message) with the home agent, the mobile station transmits a registration request message to the base station through the second management connection or transmission connection (S520), and base station transmits the registration request message to the home agent (S521). The home agent that received the registration request registers the location of the mobile station (binding the foreign agent address with the home agent address), and transmits a registration response message to the base station (S522). The base station transmits to the corresponding mobile station, the registration response message received from the home agent through the second management connection or transmission connection (S523).
[127] The mobile station that completed the IP connection establishment procedures then sets the current date and time (S524), and the content file of the mobile station is downloaded from the TFTP server through the second management connection (S525). The connection for the previously prepared service is established (S526) and the mobile station that completed the network registration procedures changes to a normal operation state.
[128] The base station periodically receives an agent advertisement message from the FA (S527), and transmits such to the Mobile IPv4 mobile stations within the base station (S528). Here, the transmission can be performed through a broadcast or multicast format network management connection identifier (allocated according to the network provider) according to that proposed in the connection identifier second embodiment. Namely, the Mobile IPv4 mobile station receives the agent advertisement message transmitted through the network management connection identifier allocated during the registration process, determines whether the FA address it is maintaining is valid, and updates the Mobile IPv4 address validity.
[129] When the mobile station performs handover with a different foreign agent network, the mobile station performs steps (S516) through (S523) of the registration procedures for the handover target base station in order to establish an IP connection. If the mobile station performs handover within the same FA network, the IP connection establishing procedures for the handover target base station may be omitted. Also, the mobile station in normal operation state periodically receives agent advertisement messages from the base station through the network management connection identifier (according to the network provider) allocated from the base station through step (S515) during handover.
[130] However, if one base station is connected with various network providers, in order to receive after handover, the agent advertisement message broadcast from the network that it is part of, the mobile station receives mapping information about the network provider identifier and the network management connection identifier, and based on these, the agent advertisement message broadcast from the network that it is part of can be received. Also, if roaming is supported between network providers, even if the mobile station undergoes handover to a base station connected to a network of another provider, the agent advertisement message can still be received through the network management connection identifier that was allocated to that other network provider, thus allowing Mobile IPv4 address validity to be updated.
[131] Figure 6 shows a flow chart of a third embodiment for a method of transmitting by the base station to the mobile stations, IP related messages that were transmitted from the network. In this embodiment, the connection identifier can be of the form provided by the connection identifier first embodiment.
[132] Referring to Figure 6, the second embodiment of the present invention will be explained. Upon power on, the mobile station searches the downlink channels and obtains uplink/downlink synchronization with the base station (S611). Also, ranging with the base station is performed to adjust uplink transmission parameters, and a basic management connection identifier and a primary management connection identifier are allocated from the base station (S612). The mobile station performs negotiation of basic functions with the base station (S613) and authentication for the mobile station is performed (S614). When the mobile station is registered with the base station, the mobile station being managed by IP receives a second management connection identifier and a network management connection identifier allocated from the base sta tion (S615). [133] The mobile station uses a FE80::/64, which is a link-local prefix, and a 64-bit interface identifier in order to induce a temporary link- local address. Also, to check any address duplicates of the induced temporary link-local address, a neighbor solicitation message is transmitted to the base station using a secondary management connection or transmission connection (S616). The base station transmits the neighbor solicitation message received from the mobile station to the router through the secondary management connection or transmission connection (S617).
[134] The router transmits the received neighbor solicitation message to all base stations within the subnet (S618), and those base stations transmit the neighbor solicitation message to the IPv6 mobile stations through the network management connection identifier having a format provided by the connection identifier first embodiment (S619). The mobile station that received the neighbor solicitation message from the base station checks to see if there is any duplication with its address, and only if there is a duplicate, a neighbor advertisement message is transmitted.
[135] If a neighbor advertisement message is not received during a certain time period by the mobile station that transmitted the neighbor solicitation message, the induced link- local address is determined to be unique. If the link-local address is determined to be unique, a router solicitation message is transmitted to the base station through the secondary management connection or transmission connection for finding a router (S620), and the base station transmits the router solicitation message received from the mobile station to the router (S621).
[136] The router that received the router solicitation message transmits a router advertisement message to the base station (S622), and the base station uses the secondary management connection or transmission connection to transmit the router advertisement message to the corresponding mobile stations (S623). The received router advertisement message is used to induce a global address to perform IP connection establishment.
[137] The mobile station that completes the IP connection establishment procedures sets the current data and time (S624), and the content file of the mobile station is downloaded from the TFTP server through the secondary management connection (S625). A connection for the previously prepared service is established (S626) and the mobile station that completed the network registration procedures change into normal operation state.
[138] The base station periodically receives a router advertisement message from the router (S627), and such can be transmitted to the IPv6 mobile station within the base station through a network management connection identifier having a broadcast or multicast format according to the connection identifier first embodiment (S628). The mobile station receiving the router advertisement message determines whether the global address that it maintains is valid, and updates a list of valid routers.
[139] In the above procedure (S627), the connection identifier used by the base station for transmitting a router advertisement message to the mobile station can be a fixed value (e.g., OxFEFE) previously defined by the mobile station and the base station. Here, all IPv6 mobile stations receive the router advertisement message transmitted through the corresponding connection identifier. When the mobile station performs handover to another router (subnet) network, the mobile station establishes an IP connection by performing the steps (S617) ~ (S620) among the network registration procedures of the handover target base station.
[140] If the mobile station performs handover within the same router (subnet) network, the IP connection establishment procedures using the steps (S617) ~ (S620) among the network registration procedures of the handover target base station may be omitted. Also, regardless of entry into another foreign agent network, after handover, the mobile station periodically receives agent advertisement messages from the base station through the same network management connection identifier as before.
[141] Figure 7 shows a flow chart of a fourth embodiment for a method of transmitting by the base station to the mobile stations, IP related messages that were transmitted from the network. In this embodiment, the connection identifier can be of the form provided by the connection identifier second embodiment.
[142] Referring to Figure 7, the fourth embodiment of the present invention will be explained. Upon power on, the mobile station searches the downlink channels and obtains uplink/downlink synchronization with the base station (S711). Also, ranging with the base station is performed to adjust uplink transmission parameters, and a basic management connection identifier and a primary management connection identifier are allocated from the base station (S712). The mobile station performs negotiation of basic functions with the base station (S713) and authentication for the mobile station is performed (S714). When the mobile station is registered with the base station, the mobile station being managed by IP receives a second management connection identifier allocated from the base station (S715). Here, the base station allocates a network management connection identifier (according to the network provider) for transmitting a broadcast format neighbor solicitation message and a router advertisement message to the mobile station that uses IPv6.
[143] However, if the mobile station delivers the network provider identifier to the base station by including it in the registration request (REG-REQ) message or in the mobile station basic capability request (SBC-REQ) message, the base station includes the network management connection identifier that was allocated to the corresponding network provider identifier into the registration response (REG-RSP) message as shown in Table 20, and allocates it to the mobile station. If the mobile station does not deliver the network provider identifier to the base station by including it in the registration request (REG-REQ) message or in the mobile station basic capability request (SBC-REQ) message, the base station delivers to the mobile station, the mapping information of the network provider identifier and the network management connection identifier as shown in Table 21, and the mobile station receives the management message broadcast form the network through the network management connection identifier with respect to the identifier of the network provider that it is part of.
[144] The mobile station uses a FE80::/64, which is a link-local prefix, and a 64-bit interface identifier in order to induce a temporary link- local address. Also, to check any address duplicates of the induced temporary link-local address, a neighbor solicitation message is transmitted to the base station using the secondary management connection or transmission connection (S716). The base station transmits the neighbor solicitation message received from the mobile station to the router through the secondary management connection or transmission connection (S717).
[145] The router transmits the received neighbor solicitation message to all base stations within the subnet (S718), and those base stations transmit the neighbor solicitation message to the IPv6 mobile stations through the network management connection identifier having a format provided by the connection identifier first embodiment (S719). The mobile station that received the neighbor solicitation message from the base station checks to see if there is any duplication with its address, and only if there is a duplicate, a neighbor advertisement message is transmitted.
[146] If a neighbor advertisement message is not received during a certain time period by the mobile station that transmitted the neighbor solicitation message, the induced link- local address is determined to be unique. If the link-local address is determined to be unique, a router solicitation message is transmitted to the base station through the secondary management connection or transmission connection for finding a router (S720), and the base station transmits the router solicitation message received from the mobile station to the router (S721).
[147] The router that received the router solicitation message transmits a router advertisement message to the base station (S722), and the base station uses the secondary management connection or transmission connection to transmit the router advertisement message to the corresponding mobile stations (S723). The received router advertisement message is used to induce a global address to perform IP connection establishment.
[148] The mobile station that completes the IP connection establishment procedures sets the current data and time (S724), and the content file of the mobile station is downloaded from the TFTP server through the secondary management connection (S725). A connection for the previously prepared service is established (S726) and the mobile station that completed the network registration procedures change into normal operation state.
[149] The base station periodically receives a router advertisement message from the router (S727), and such can be transmitted to the IPv6 mobile station within the base station through a network management connection identifier (according to the network provider) having a broadcast or multicast format according to the connection identifier first embodiment (S728). The mobile station receiving the router advertisement message determines whether the global address that it maintains is valid, and updates a list of valid routers.
[150] As described above, the present invention proposes a connection identifier to allow a base station to transmit in broadcast or multicast format to the corresponding mobile stations, the messages broadcast from the network in order to establish connections for Mobile IPv4 and IPv6, and to manage such connections.
[151] Referring to Figure 8, an embodiment of the present invention will be explained as follows. The base station periodically receives an agent advertisement message from the FA, and transmits such to the Mobile IPv4 mobile stations within the base station through the network management connection identifier having multicast format as proposed by the present invention (S811). Namely, through the network management connection identifier defined in the first and second embodiments of the present invention, each Mobile IPv4 mobile station receives the agent advertisement message, determines whether the FA address that it maintains is valid, and updates the validity of the Mobile IPv4 address.
[152] To change into idle mode, the mobile station delivers an idle mode request message to the base station (S812). The base station delivers an idle mode response message to the mobile station to allow it to change into idle mode (S813). By periodically receiving paging advertisement messages of broadcast format from the base station, the mobile station receives instructions as to whether downlink traffic to be sent has been generated or whether it should perform location update procedures (S814). If instructed to maintain its idle mode through the paging advertisement message, the idle mode is maintained until the next paging advertisement message is delivered, to thus minimize power consumption.
[153] After the mobile station updates the validity of the Mobile IPv4 address by receiving an agent advertisement message, when the next agent advertisement message delivery time arrives, the downlink synchronization with the base station is obtained and the downlink frames are continuously received, until the agent advertisement message is received via a particular connection identifier of multicast format as proposed by the present invention (S815). (To periodically transmit agent advertisement messages, the agent uses a randomly selected transmission period between pre-defined minimum and maximum periods to transmit the agent advertisement message to the network in broadcast format. Accordingly, a mobile station in idle mode receives an agent advertisement message and can maintain its idle mode for at least during the minimum transmission period.) The mobile station that received the agent advertisement message determines whether the FA address that it is maintaining is valid or not, updates the validity of the Mobile IPv4 address, and maintains idle mode state once again.
[154] Referring to Figure 9, an embodiment of the present invention will be explained as follows. The base station periodically receives a router advertisement message from the router, and transmits such to the IPv6 mobile stations within the base station through the network management connection identifier having multicast format as proposed by the present invention (S911). Namely, through the network management connection identifier defined in the first and second embodiments of the present invention, each IPv6 mobile station receives the router advertisement message, determines whether the router prefix information that it maintains is valid, and updates the validity of the IPv6 address.
[155] To change into idle mode, the mobile station delivers an idle mode request message to the base station (S912). The base station delivers an idle mode response message to the mobile station to allow it to change into idle mode (S913). By periodically receiving paging advertisement messages of broadcast format from the base station, the mobile station receives instructions as to whether downlink traffic to be sent has been generated or whether it should perform location update procedures (S914). If instructed to maintain its idle mode through the paging advertisement message, the idle mode is maintained until the next paging advertisement message is delivered, to thus minimize power consumption.
[156] After the mobile station updates the validity of the IPv6 address by receiving a router advertisement message, when the next router advertisement message delivery time arrives, the downlink synchronization with the base station is obtained and the downlink frames are continuously received, until the router advertisement message is received via a particular connection identifier of multicast format as proposed by the present invention (S915). (To periodically transmit router advertisement messages, the router uses a randomly selected transmission period between pre-defined minimum and maximum periods to transmit the router advertisement message to the network in broadcast format. Accordingly, a mobile station in idle mode receives a router advertisement message and can maintain its idle mode for at least during the minimum transmission period.) The mobile station that received the router advertisement message determines whether the router prefix information that it is maintaining is valid or not, updates the validity of the IPv6 address, and maintains idle mode state once again.
[157] The mobile station periodically receives broadcast format paging messages (S916), and periodically receives router advertisement messages via a particular connection identifier of multicast format as proposed by the present invention (S917).
[158] In the operation of the present invention, the procedures for transmitting an agent advertisement message, a neighbor solicitation message, and a router advertisement message from the base station to the mobile station through the connection identifier proposed in the present invention has been described. However, this is merely exemplary, as other types of standards-based management messages that need to be transmitted in broadcast or multicast format other than the MAC management messages of a broadband wireless access system may also be transmitted through the connection identifier proposed by the present invention.
[159] Regarding the effects of the broadband wireless access system of the present invention, a connection identifier is defined in order to transmit in broadcast or multicast format from the broadband wireless access system, those messages broadcast from the network for address establishment, and the messages broadcast from the network can be transmitted to the mobile stations in broadcast or multicast format by using the above connection identifier, to thus save radio resources.
[160] The present invention is related to the research and development being conducted by various IEEE working groups, such as IEEE 802.16, and thus the concepts and teachings involved therein are applicable to the features of the present invention.
[161] For example, IEEE 802.16e uses DHCP (Dynamic Host Configuration Protocol) and Mobile IP in order to allocate IP addresses to Mobile Subscriber Stations (MSSs). However, when IPv6 is used, IP address is configured by either IPv6 Stateless Address Autoconfiguration (IETF RFC 2462) or Stateful Address Autoconfiguration protocol, such as DHCPvό (IETF RFC 3315).
[162] The present invention provides a modification to allow allocation of IPv6 addresses by stateful or stateless procedures. This is achieved by adding SS (mobile subscriber station) IPv6 addressing, and separating the IPv4 and IPv6 addressing.
[163] For a MSS, if a mobile IP is being used, the MSS may secure its address on the secondary management connection using the mobile IP. Otherwise, for fixed subscriber stations and for MSSs using IPv4 and not using mobile IP, the subscriber station (SS) shall invoke DHCP mechanisms [IETF RFC 2131] in order to obtain an IP address and any other parameters needed to establish IP connectivity. The DHCP response shall contain the name of a file that contains further configuration parameters. For fixed SS and for MSSs using IPv6, the SS shall either invoke DHCPvό [IETF RFC 3315] or IPv6 Stateless Address Auto-configuration [IETF RFC 2462] based on the value of the Type-Length- Value (TLV) tuple in the Registration Response (REG_RSP) message. Establishment of IP connectivity can be performed on the SS's secondary management connection.
[164] The following Tables 22 and 23 show examples of TLV tuples used in a method for allocating IP addresses according to the present invention.
[165] [Table 22]
Figure imgf000034_0001
[166] [Table 23]
Figure imgf000034_0002
[167] Additionally, as various efforts are being made to implement the interworking of different types of networks and communication technologies, such as achieving compatibility between IEEE networks and cellular networks (such as, a third generation (3G) networks), it can be clearly understood that the present invention may also have applicability in achieving such compatibility.
[168] As the present invention has been described above with respect to wireless access technologies, it can be clearly understood that various wireless access technologies currently under development (such as WiMax, WiBro, Wi-Fi, etc.) can also benefit from the features and teachings of the present invention, which are applicable because of the similarities involved in wireless communications involving user terminal mobility, handovers and idle mode operations.
[169] The foregoing description of the preferred embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments. Thus, the present invention is not intended to be limited to the embodiments shown herein but us to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

Claims
[1] For a broadband wireless access system including a network, a base station, and at least one mobile station, in a method for the base station to transmit a message for Mobile IPv4 address establishment, a method of transmitting an address establishment control message comprising: receiving an agent advertisement message from the network; and transmitting the agent advertisement message to all mobile IPv4 mobile stations associated with the base station through use of a particular connection identifier.
[2] The method of claim 1, wherein the agent advertisement message is received from either a foreign agent or a home agent.
[3] The method of claim 1, wherein the particular connection identifier is a fixed dedicated connection identifier having a broadcast or multicast format.
[4] The method of claim 1, further comprises: a connection identifier according to a network provider being allocated by the base station and transmitted to the mobile station; and transmitting the agent advertisement message to all Mobile IPv4 mobile stations associated with the base station by using the allocated connection identifier.
[5] The method of claim 4, wherein the connection identifier according to the network provider is allocated when the mobile station performs registration procedures with the base station.
[6] The method of claim 5, wherein the registration procedures of the mobile station is either an initial registration process or a registration process for being included with the base station due to handover.
[7] The method of claim 1, wherein the agent advertisement message is transmitted periodically.
[8] For a broadband wireless access system including a network, a base station, and at least one mobile station, in a method for the base station to transmit a message for Mobile IPv4 address establishment, a method of transmitting an address establishment control message comprising: receiving a router advertisement message from the network; and transmitting the router advertisement message to all IPv6 mobile stations associated with the base station through use of a particular connection identifier.
[9] The method of claim 8, wherein the particular connection identifier is a fixed dedicated connection identifier having a broadcast or multicast format.
[10] The method of claim 8, wherein the router advertisement message is a message for the mobile station to determine whether its global address is unique and to update a list of valid routers.
[11] The method of claim 8, wherein the router advertisement message is transmitted periodically.
[12] The method of claim 8, further comprises: a connection identifier according to a network provider being allocated by the base station and transmitted to the mobile station; and transmitting the router advertisement message to all Mobile IPv4 mobile stations associated with the base station by using the allocated connection identifier.
[13] The method of claim 12, wherein the connection identifier according to the network provider is allocated when the mobile station performs registration procedures with the base station.
[14] The method of claim 13, wherein the registration procedures of the mobile station is either an initial registration process or a registration process for being included with the base station due to handover.
[15] For a broadband wireless access system including a network, a base station, and at least one mobile station, in a method for the base station to transmit a message for Internet Protocol (IP) address establishment, a method of transmitting an address establishment control message comprising: receiving a neighbor solicitation message from the network to determine a uniqueness of a temporary address established for the mobile station; and transmitting the neighbor solicitation message to all IPv6 mobile stations associated with the base station through use of a particular connection identifier.
[16] The method of claim 15, wherein the IP address establishment method uses IPv6.
[17] The method of claim 15, further comprises: a connection identifier according to a network provider being allocated by the base station and transmitted to the mobile station; and transmitting the router advertisement message to all IPv6 mobile stations associated with the base station by using the allocated connection identifier according to the network provider.
[18] The method of claim 15, wherein the connection identifier according to the network provider is allocated when the mobile station performs registration procedures with the base station.
[19] For a broadband wireless access system including a network, a base station, and at least one mobile station, in a method for the mobile station to receive a message for Internet Protocol (IP) address establishment, a method of receiving an address establishment control message comprising: changing into idle mode; and receiving an IP address establishment message delivered from the base station through a particular connection identifier while in the idle mode.
[20] The method of claim 19, wherein the IP address establishment message is an IP address establishment message having an IPv6 format.
[21] The method of claim 20, wherein the particular connection identifier is a fixed dedicated connection identifier having a multicast format.
[22] The method of claim 20, wherein the IP address establishment message is a router advertisement message that comprises information for the mobile station to determine whether its global address is unique and information for updating a list of valid routers.
[23] The method of claim 20, wherein the router advertisement message is transmitted periodically.
[24] The method of claim 23, further comprises: receiving the router advertisement message according to the mobile station IP address information that is maintained at the base station; and updating a validity of the IP address by using the router advertisement message.
[25] The method of claim 19, wherein the IP address establishment message is an IP address establishment message having an IPv6 format.
[26] The method of claim 25, wherein the particular connection identifier is a fixed dedicated connection identifier having a multicast format.
[27] The method of claim 25, wherein the IP address establishment message is an agent advertisement message that is transmitted periodically.
[28] The method of claim 27, further comprises: receiving the router advertisement message according to the mobile station IP address information that is maintained at the base station; and updating a validity of the IP address by using the router advertisement message.
[29] A method of Internet Protocol (IP) addressing for broadband wireless access systems, the method comprising: negotiating a method for IP addressing for IPv4 and IPv6 between a point of attachment and a user device having an IP address; and for Mobile IPv4, broadcasting Mobile IPv4 related control information by using a connection identifier to all user devices associated with the point of attachment, and the user device refers to the connection identifier to discriminate Mobile IPv4 related control information from other broadcasting control information, for IPv6, negotiating a method for IP addressing for DHCPvό and IPv6 stateless address autoconfiguration, for IPv6 stateless address autoconfiguration, broadcasting IPv6 related control information by using a connection identifier to all user devices associated with the point of attachment, and the user device refers to the connection identifier to discriminate IPv6 related control information from other broadcasting control information.
[30] The method of claim 29, wherein the connection identifier is used to discriminate one or more foreign agents associated with one network operator.
[31] The method of claim 30, wherein the network operator is a network service provider or network access provider.
[32] The method of claim 30, wherein the connection identifier is a broadcast channel.
[33] The method of claim 30, wherein the control information is an agent advertisement.
[34] The method of claim 33, wherein the agent advertisement includes a home agent advertisement or a foreign agent advertisement.
[35] A method of Internet Protocol (IP) addressing for broadband wireless access systems, the method comprising: negotiating IP addressing for IPv4 and IPv6 between a point of attachment and a user device having an IP address by using a broadcast dedicated connection identifier.
[36] The method of claim 35, wherein the negotiating step comprises: sending control information by the point of attachment through the broadcast dedicated connection identifier.
[37] The method of claim 35, wherein the negotiating step comprises: processing control information received by the user device based upon the broadcast dedicated connection identifier that distinguishes between different types of control information.
[38] The method of claim 35, wherein if the control information is for Mobile IPv4, the sending step further comprises: broadcasting Mobile IPv4 related control information by using the connection identifier to all user devices associated with the point of attachment.
[39] The method of claim 35, wherein if the control information is for IPv6 stateless address autoconfiguration, the sending step further comprises: broadcasting IPv6 related control information by using the connection identifier to all user devices associated with the point of attachment.
[40] The method of claim 35, wherein if the control information is for IPv6, negotiating a method for IP addressing for DHCPvό and IPv6 stateless address autoconfiguration,
[41] The method of claim 40, wherein the negotiating a method for IPv6 stateless address autoconfiguration comprises: broadcasting IPv6 related control information by using the connection identifier to all user devices associated with the point of attachment.
[42] The method of claim 35, wherein the connection identifier is used to discriminate one or more foreign agents associated with one network operator.
[43] The method of claim 42, wherein the network operator is a network service provider or network access provider.
[44] The method of claim 42, wherein the connection identifier is a broadcast channel.
[45] The method of claim 42, wherein the control information is an agent advertisement.
[46] The method of claim 45, wherein the agent advertisement includes a home agent advertisement or a foreign agent advertisement.
PCT/KR2005/001339 2004-05-07 2005-05-07 Ip addressing to support ipv4 and ipv6 WO2005109767A1 (en)

Priority Applications (8)

Application Number Priority Date Filing Date Title
EP05740865A EP1745600A4 (en) 2004-05-07 2005-05-07 Ip addressing to support ipv4 and ipv6
BRPI0510726-1A BRPI0510726A (en) 2004-05-07 2005-05-07 ip addressing to support ipv4 and ipv6
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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007067012A2 (en) * 2005-12-09 2007-06-14 Samsung Electronics Co., Ltd. Method and apparatus for upper level protocol message
CN101637050A (en) * 2007-03-05 2010-01-27 英特尔公司 Wake-on-WLAN for stationary wireless stations
WO2013027176A1 (en) * 2011-08-21 2013-02-28 Telefonaktiebolaget L M Ericsson (Publ) Method and gateway for transmission of router advertisement
US9155057B2 (en) 2012-05-01 2015-10-06 Qualcomm Incorporated Femtocell synchronization enhancements using access probes from cooperating mobiles
US9204349B2 (en) 2009-02-10 2015-12-01 Qualcomm Incorporated Method and apparatus for facilitating a hand-in of user equipment to femto cells
US9237530B2 (en) 2012-11-09 2016-01-12 Qualcomm Incorporated Network listen with self interference cancellation
US9271248B2 (en) 2010-03-02 2016-02-23 Qualcomm Incorporated System and method for timing and frequency synchronization by a Femto access point
US9392562B2 (en) 2009-11-17 2016-07-12 Qualcomm Incorporated Idle access terminal-assisted time and/or frequency tracking
US9642105B2 (en) 2009-11-17 2017-05-02 Qualcomm Incorporated Access terminal-assisted time and/or frequency tracking
US9756553B2 (en) 2010-09-16 2017-09-05 Qualcomm Incorporated System and method for assisted network acquisition and search updates

Families Citing this family (72)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7292565B2 (en) * 2002-08-07 2007-11-06 Fujitsu Limited Communication method
WO2005122438A1 (en) 2004-06-11 2005-12-22 Samsung Electronics Co., Ltd. System and method for fast network re-entry in a broadband wireless access communication system
CN101902828B (en) * 2004-06-23 2012-01-04 三星电子株式会社 Method of configuring and updating connection identifier in a broadband wireless access communication system
US8014377B2 (en) * 2004-06-24 2011-09-06 Nortel Networks Limited Efficient location updates, paging and short bursts
US7505775B2 (en) * 2004-06-25 2009-03-17 Gi Seon Ryu Verifying availability of idle-mode mobile subscriber station in wireless access system
EP3745634A1 (en) 2004-10-15 2020-12-02 Apple Inc. Communication resource allocation systems and methods
KR100735297B1 (en) * 2005-01-05 2007-07-03 삼성전자주식회사 System and method for transmitting/receiving automatic repeat request reset information in a communication system
KR100597422B1 (en) * 2005-01-18 2006-07-05 삼성전자주식회사 Method and apparatus for minimizing handoff time using information of mobile device
KR100617733B1 (en) * 2005-01-22 2006-08-28 삼성전자주식회사 System and method for network re-entry in a communication system
US20060194579A1 (en) * 2005-02-25 2006-08-31 Leung Kin K Method of mobility support for wireless networks
US8554232B2 (en) * 2005-08-17 2013-10-08 Apple Inc. Method and system for a wireless multi-hop relay network
CN1929440B (en) * 2005-09-09 2011-04-20 华为技术有限公司 Method and system for business flow management based on transfer station
KR100818916B1 (en) * 2005-09-12 2008-04-03 삼성전자주식회사 Mobile node and data server for providing information on an IP address allocation, and method for providing information on an IP address allocation
KR100901373B1 (en) * 2005-10-11 2009-06-05 삼성전자주식회사 Apparatus and method for managing connection identifier in a multi-hop relay wireless access communication system
KR101210340B1 (en) * 2005-10-13 2012-12-10 삼성전자주식회사 Method and Apparatus for Supporting Multicast/Broadcast in Wireless Communication System
KR100710530B1 (en) * 2005-10-21 2007-04-23 삼성전자주식회사 Method for configuration and registration of internet protocol address in a wireless mobile communication system with a connection oriented radio link
US7933236B2 (en) * 2005-10-27 2011-04-26 Nortel Networks Limited Methods and systems for a wireless routing architecture and protocol
CN1802024B (en) * 2005-10-28 2010-10-06 华为技术有限公司 Method for carrying out management on information of terminal quitting idle mode
KR101203463B1 (en) * 2005-11-03 2012-11-21 삼성전자주식회사 Method and Apparatus for Neighbor Discovery in IPv6-based Mobile System
KR101009804B1 (en) * 2005-11-04 2011-01-19 재단법인서울대학교산학협력재단 Power-saving method for mobile terminal in wireless local area network
CN1980466B (en) * 2005-12-07 2010-11-10 华为技术有限公司 Paying group network and terminal place renewing method
KR100901137B1 (en) * 2006-01-03 2009-06-04 삼성전자주식회사 Method and apparatus for managing connection identifier in a multi-hop relay wireless access communication system
KR101202873B1 (en) * 2006-01-04 2012-11-19 삼성전자주식회사 APPARATUS AND METHOD FOR SUPPORTING IPv6 IN TERMINAL
WO2007092617A2 (en) * 2006-02-09 2007-08-16 Starent Networks Corporation Fast handoff support for wireless networks
KR100785805B1 (en) * 2006-02-23 2007-12-13 한국전자통신연구원 Method and Apparatus for allocating Multicast CID and transporting IP multicast packets over IEEE 802.16/Wibro Networks
WO2007097571A1 (en) * 2006-02-23 2007-08-30 Electronics And Telecommunications Research Institute Method and apparatus for allocating multicast connection identifier used for ip multicast packet transmission over portable internet network and transmitting packet using the multicast connection identifier
DE102006009988B4 (en) * 2006-03-03 2007-12-27 Siemens Ag Communication system, computer and method for determining a communication protocol to be used in a communication system
KR100739803B1 (en) * 2006-04-21 2007-07-13 삼성전자주식회사 Apparatus and method of handover for mobile node
US8625609B2 (en) * 2006-05-19 2014-01-07 Futurewei Technologies Inc. Using DHCPv6 and AAA for mobile station prefix delegation and enhanced neighbor discovery
US7804806B2 (en) * 2006-06-30 2010-09-28 Symbol Technologies, Inc. Techniques for peer wireless switch discovery within a mobility domain
KR100734884B1 (en) * 2006-07-11 2007-07-03 한국전자통신연구원 Method for transmitting neighbor discovery protocol message in ieee 802.16/wibro network
US8051151B2 (en) * 2006-07-11 2011-11-01 Cisco Technology, Inc. System and method for communicating with a network node behind a subscriber station with an IP convergence sub-layer
US7889705B2 (en) * 2006-07-28 2011-02-15 Samsung Electronics Co., Ltd. Mobile terminal and method for notifying access router of IP address in wireless network
KR101221596B1 (en) * 2006-07-28 2013-01-14 삼성전자주식회사 Mobile terminal and method for notifying ip address to access router in wireless network
US8107417B2 (en) * 2006-08-04 2012-01-31 Samsung Electronics Co., Ltd. Method and mobile terminal for allocating IP address in wireless network
US8107408B2 (en) * 2006-08-09 2012-01-31 Nokia Siemens Networks Gmbh & Co. Kg Route maintenance and update based on connection identifier in multi-hop relay systems
KR20080026318A (en) * 2006-09-20 2008-03-25 삼성전자주식회사 Method and apparatus for internet protocol address configuration, and data storage medium storing a format of data therefor
US8005080B2 (en) * 2006-10-23 2011-08-23 Electronics And Telecommunications Research Institute IPv6 address configuration method in wireless mobile network and apparatus therefor
US7969960B2 (en) * 2006-12-01 2011-06-28 Samsung Electronics Co., Ltd. Method for IP management connection control in wireless communication system
US8498265B2 (en) * 2006-12-14 2013-07-30 Nokia Corporation Enabling settings provisioning process in WiMAX networks
US20080225807A1 (en) * 2007-03-16 2008-09-18 Nokia Corporation Transmitter, receiver and system as well as related methods and computer programs for identifying at least one network capability
KR101009776B1 (en) * 2007-05-21 2011-01-19 삼성전자주식회사 System and method to transmit receive neighbor base station information in a communication system
US8571554B2 (en) * 2007-07-04 2013-10-29 Samsung Electronics Co., Ltd. Apparatus and method for managing connection identification in a communication system
EP2206404A1 (en) * 2007-10-01 2010-07-14 Nokia Siemens Networks OY Relaying data in a communication system
US9225684B2 (en) * 2007-10-29 2015-12-29 Microsoft Technology Licensing, Llc Controlling network access
US8493910B2 (en) * 2008-03-05 2013-07-23 Futurewei Technologies, Inc. Prefix delegation support for mobile networks
US20090238151A1 (en) * 2008-03-19 2009-09-24 Rajaram Ramesh Method and apparatus for enabling quick paging in telecommunication systems
CN101547383B (en) * 2008-03-26 2013-06-05 华为技术有限公司 Access authentication method, access authentication system and related equipment
CN101547223B (en) * 2008-03-26 2012-11-21 华为技术有限公司 Method, device and system for address configuration
WO2010029798A1 (en) * 2008-09-10 2010-03-18 日本電気株式会社 Communication system, network node, mobile node, communication method, and program
US9014136B2 (en) 2008-10-13 2015-04-21 T-Mobile Usa, Inc. System and method to provide fast wide-area mobile IP handoffs
EP2352338A1 (en) * 2008-11-07 2011-08-03 Panasonic Corporation Handover method, and mobile terminal and home agent used in the method
US8094621B2 (en) * 2009-02-13 2012-01-10 Mitsubishi Electric Research Laboratories, Inc. Fast handover protocols for WiMAX networks
US8218466B2 (en) * 2009-03-17 2012-07-10 Qualcomm Incorporated Methods and apparatus for changing paging parameters in a communication system
KR20110092201A (en) * 2010-02-08 2011-08-17 엘지전자 주식회사 Method of network re-entry in a broadband wireless access system
MY153836A (en) * 2010-07-06 2015-03-31 Mimos Berhad A method of disseminating network information
KR101682956B1 (en) 2010-10-14 2016-12-07 삼성전자주식회사 Method and apparatus for reducing access overhead from paged devices in machine to machine communication system
KR101328966B1 (en) * 2010-12-03 2013-11-20 엘지전자 주식회사 Apparatus and method for transceiving multicast traffic in a wireless access system supporting machine-to-machine communication
JP5879706B2 (en) * 2011-03-15 2016-03-08 オムロン株式会社 Control system, operation terminal and program
US8811281B2 (en) 2011-04-01 2014-08-19 Cisco Technology, Inc. Soft retention for call admission control in communication networks
CN103797729B (en) * 2011-09-09 2016-10-26 Lg电子株式会社 Receive the method for multicast service and use the terminal of the method
JP2013070319A (en) * 2011-09-26 2013-04-18 Nec Corp Access gateway device and router advertisement communication control method in communication system
WO2013150339A1 (en) * 2012-04-04 2013-10-10 Nokia Corporation Method and apparatus for transmission synchronization
TWI483605B (en) * 2012-11-29 2015-05-01 Compal Broadband Networks Inc Deployment method and computer system for network system
US9621581B2 (en) * 2013-03-15 2017-04-11 Cisco Technology, Inc. IPV6/IPV4 resolution-less forwarding up to a destination
US10404652B2 (en) * 2013-07-16 2019-09-03 Nec Corporation Communication device, communication method, and program
US9680502B2 (en) * 2014-05-09 2017-06-13 Avago Technologies General Ip (Singapore) Pte. Ltd. Message page integrity verification in automotive network auto-negotiation
KR102340268B1 (en) * 2015-04-29 2021-12-15 주식회사 엘지유플러스 Method and apparatus for recognizing the network environment and determining the operation mode automatically in a home gateway
US9949063B2 (en) 2015-06-01 2018-04-17 Apple Inc. Bluetooth low energy triggering NAN for further discovery and connection
CN109076417A (en) 2016-04-20 2018-12-21 韩国电子通信研究院 switching method
CN112559542B (en) * 2020-12-11 2023-11-07 赛尔网络有限公司 Network basic information base updating method, device, equipment and storage medium
US11949652B2 (en) 2021-03-31 2024-04-02 Samsung Electronics Co., Ltd. Transmitting router advertisements based on identification information of external devices

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2001097549A1 (en) 2000-06-16 2001-12-20 Nokia Mobile Phones Ltd Method and apparatus for mobile internet protocol regional paging
CA2397966A1 (en) * 2000-11-21 2002-05-30 Samsung Electronics Co., Ltd. Regional tunnel management method in a mobile communication system using mobile ip
US20020141361A1 (en) * 2001-04-03 2002-10-03 Lila Madour Mobile IP registration in selected inter-PDSN dormant hand-off cases in a CDMA2000-based cellular telecommunications network
WO2004008713A1 (en) 2002-07-16 2004-01-22 Nokia Corporation Apparatus, and associated method, for providing router advertisement information to a mobile node in a radio ip system

Family Cites Families (46)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5603081A (en) * 1993-11-01 1997-02-11 Telefonaktiebolaget Lm Ericsson Method for communicating in a wireless communication system
JPH0758771A (en) 1993-08-12 1995-03-03 Sharp Corp Address managing device
JPH09331580A (en) 1996-06-13 1997-12-22 Toshiba Corp Radio communication system provided with message transmission service function
JP3609624B2 (en) 1997-08-01 2005-01-12 株式会社東芝 Mobile computer device, mobile computer management device, mobile information management device, and communication control method
GB2341059A (en) * 1998-08-28 2000-03-01 Nokia Oy Ab Internet protocol flow detection
FI108200B (en) * 1998-09-14 2001-11-30 Nokia Mobile Phones Ltd Switching the connection between mobile networks
US6560216B1 (en) * 1998-09-17 2003-05-06 Openwave Systems Inc. Data network computing device call processing
US7136645B2 (en) * 1998-10-09 2006-11-14 Netmotion Wireless, Inc. Method and apparatus for providing mobile and other intermittent connectivity in a computing environment
US6160804A (en) * 1998-11-13 2000-12-12 Lucent Technologies Inc. Mobility management for a multimedia mobile network
KR100379459B1 (en) 1999-02-12 2003-04-10 엘지전자 주식회사 Packet Data Service Providing System in Mobile Communication System and Operating Method using the same of
WO2000067446A1 (en) * 1999-05-03 2000-11-09 Nokia Corporation SIM BASED AUTHENTICATION MECHANISM FOR DHCRv4/v6 MESSAGES
JP3440881B2 (en) * 1999-06-08 2003-08-25 日本電気株式会社 Topology information automatic construction method and apparatus, and machine-readable recording medium recording a program
US6590880B1 (en) * 1999-10-15 2003-07-08 Nokia Corporation Apparatus, and associated method, for facilitating communication handover in packet radio communication system
EP1111874A1 (en) * 1999-12-20 2001-06-27 Telefonaktiebolaget L M Ericsson Routing in mobile-IP Ad-Hoc networks
US6982967B1 (en) * 2000-06-29 2006-01-03 Cisco Technology, Inc. Methods and apparatus for implementing a proxy mobile node in a wireless local area network
US7698463B2 (en) * 2000-09-12 2010-04-13 Sri International System and method for disseminating topology and link-state information to routing nodes in a mobile ad hoc network
US7218634B1 (en) * 2000-10-10 2007-05-15 Nortel Networks Limited Assisted power-up and hand-off system and method
KR100520141B1 (en) 2000-10-26 2005-10-10 삼성전자주식회사 Hanover method of mobile terminal having mobile ip in mobile communication system
JP2002186010A (en) 2000-12-13 2002-06-28 Mitsubishi Electric Corp Mobile node position management method and network system
ES2296733T3 (en) * 2001-02-06 2008-05-01 Nokia Corporation ACCESS SYSTEM FOR A CELLULAR NETWORK.
US7065062B2 (en) * 2001-02-16 2006-06-20 Telefonaktiebolaget Lm Ericsson (Publ) Mobile IP mobility management at dormant hand-over in CDMA IP-based cellular packet-data network
EP1362463A2 (en) * 2001-02-19 2003-11-19 BRITISH TELECOMMUNICATIONS public limited company Communications network
US6965584B2 (en) * 2001-02-27 2005-11-15 Telcordia Technologies, Inc. Dynamic forward assignment of internet protocol addresses in wireless networks
JP4652608B2 (en) 2001-05-16 2011-03-16 Kddi株式会社 Mobile IP data transfer method
US7072340B2 (en) * 2002-01-31 2006-07-04 Telcordia Technologies, Inc. Dynamic assignment and validation of IP addresses in wireless IP networks
JP2003274438A (en) 2002-03-18 2003-09-26 Victor Co Of Japan Ltd Wireless terminal, line controller, and ip wireless phone system
JP3876741B2 (en) * 2002-03-27 2007-02-07 株式会社日立製作所 Protocol conversion method and apparatus
US6973310B2 (en) * 2002-06-26 2005-12-06 Qualcomm Inc. Fast reacquisition after long sleep
US7039404B2 (en) * 2002-06-27 2006-05-02 Intel Corporation Continuous mobility across wireless networks by integrating mobile IP and GPRS mobility agents
US7130614B2 (en) * 2002-08-30 2006-10-31 Nokia Corporation Mobile unit attachment/update to cellular communication network
KR100513022B1 (en) * 2002-09-10 2005-09-05 삼성전자주식회사 Method of using common data location register of public network and private network private in wireless highspeed data system
JP4082152B2 (en) 2002-09-25 2008-04-30 ソニー株式会社 Communication device and communication method
US20040122976A1 (en) * 2002-10-24 2004-06-24 Ashutosh Dutta Integrated mobility management
US20040085957A1 (en) * 2002-11-01 2004-05-06 Sanjeev Verma Apparatus and method for providing IP connectivity to mobile nodes during handover
KR100594110B1 (en) * 2003-03-08 2006-07-03 삼성전자주식회사 System and method for implementing a handoff in a traffic state in a broadband wireless access communication system
US7031328B2 (en) * 2003-03-10 2006-04-18 Cisco Technology, Inc. Arrangement for traversing an IPv4 network by IPv6 mobile routers
KR20040092830A (en) * 2003-04-29 2004-11-04 삼성전자주식회사 Method for controlling a sleep interval in broadband wireless access communication systems
KR100665457B1 (en) * 2003-04-30 2007-01-04 삼성전자주식회사 System and method for controlling state transition in sleep mode and awake mode in broadband wireless access communication system
FI20030967A (en) * 2003-06-27 2004-12-28 Nokia Corp Selection of connection settings
US20050025164A1 (en) * 2003-07-16 2005-02-03 Telefonaktiebolaget L M Ericsson (Publ) Seamless hand-off of mobile node to a wireless local area network (WLAN)
US7739394B2 (en) * 2003-07-29 2010-06-15 At&T Intellectual Property I, L.P. Bi-level addressing for internet protocol broadband access
KR101194031B1 (en) * 2003-12-02 2012-10-24 삼성전자주식회사 Inter-technology handoff method in ip-based wireless communication system
US7860978B2 (en) * 2004-01-22 2010-12-28 Toshiba America Research, Inc. Establishing a secure tunnel to access router
KR20050089685A (en) * 2004-03-05 2005-09-08 삼성전자주식회사 System and method for changing frequency allocation in a broadband wireless access communication system
US7768975B2 (en) * 2004-03-29 2010-08-03 Telecordia Technologies, Inc. Fast handoff using GPS technology for mobile telematics
US7213057B2 (en) * 2004-03-31 2007-05-01 Intel Corporation Method for configuration of notebook computer based on location

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2001097549A1 (en) 2000-06-16 2001-12-20 Nokia Mobile Phones Ltd Method and apparatus for mobile internet protocol regional paging
CA2397966A1 (en) * 2000-11-21 2002-05-30 Samsung Electronics Co., Ltd. Regional tunnel management method in a mobile communication system using mobile ip
US20020141361A1 (en) * 2001-04-03 2002-10-03 Lila Madour Mobile IP registration in selected inter-PDSN dormant hand-off cases in a CDMA2000-based cellular telecommunications network
WO2004008713A1 (en) 2002-07-16 2004-01-22 Nokia Corporation Apparatus, and associated method, for providing router advertisement information to a mobile node in a radio ip system

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP1745600A4

Cited By (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007067012A3 (en) * 2005-12-09 2008-08-21 Samsung Electronics Co Ltd Method and apparatus for upper level protocol message
US8160102B2 (en) 2005-12-09 2012-04-17 Samsung Electronics Co., Ltd. Method and apparatus for upper level protocol message
WO2007067012A2 (en) * 2005-12-09 2007-06-14 Samsung Electronics Co., Ltd. Method and apparatus for upper level protocol message
CN101637050A (en) * 2007-03-05 2010-01-27 英特尔公司 Wake-on-WLAN for stationary wireless stations
US9204349B2 (en) 2009-02-10 2015-12-01 Qualcomm Incorporated Method and apparatus for facilitating a hand-in of user equipment to femto cells
US9642105B2 (en) 2009-11-17 2017-05-02 Qualcomm Incorporated Access terminal-assisted time and/or frequency tracking
US9392562B2 (en) 2009-11-17 2016-07-12 Qualcomm Incorporated Idle access terminal-assisted time and/or frequency tracking
US9271248B2 (en) 2010-03-02 2016-02-23 Qualcomm Incorporated System and method for timing and frequency synchronization by a Femto access point
US9756553B2 (en) 2010-09-16 2017-09-05 Qualcomm Incorporated System and method for assisted network acquisition and search updates
CN103891351A (en) * 2011-08-21 2014-06-25 瑞典爱立信有限公司 Method and gateway for transmission of router advertisement
US8625628B2 (en) 2011-08-21 2014-01-07 Telefonaktiebolaget L M Ericsson (Publ) Method and gateway for transmission of router advertisement
WO2013027176A1 (en) * 2011-08-21 2013-02-28 Telefonaktiebolaget L M Ericsson (Publ) Method and gateway for transmission of router advertisement
US9155057B2 (en) 2012-05-01 2015-10-06 Qualcomm Incorporated Femtocell synchronization enhancements using access probes from cooperating mobiles
US9237530B2 (en) 2012-11-09 2016-01-12 Qualcomm Incorporated Network listen with self interference cancellation

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